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默认模式网络连接的变化与氯胺酮的延迟谷氨酸能效应相对应。

Default mode network connectivity change corresponds to ketamine's delayed glutamatergic effects.

机构信息

Clinical Affective Neuroimaging Laboratory, Leibniz Institute for Neurobiology, Magdeburg, Germany.

Otto-von-Guericke-University, Magdeburg, Germany.

出版信息

Eur Arch Psychiatry Clin Neurosci. 2020 Mar;270(2):207-216. doi: 10.1007/s00406-018-0942-y. Epub 2018 Oct 23.

DOI:10.1007/s00406-018-0942-y
PMID:30353262
Abstract

Ketamine exerts rapid antidepressant effects peaking 24 h after a single infusion, which have been suggested to be reflected by both reduced functional connectivity (FC) within default mode network (DMN) and altered glutamatergic levels in the perigenual anterior cingulate cortex (pgACC) at 24 h. Understanding the interrelation and time point specificity of ketamine-induced changes of brain circuitry and metabolism is thus key to future therapeutic developments. We investigated the correlation of late glutamatergic changes with FC changes seeded from the posterior cingulate cortex (PCC) and tested the prediction of the latter by acute fractional amplitude of low-frequency fluctuations (fALFF). In a double-blind, randomized, placebo-controlled study of 61 healthy subjects, we compared effects of subanesthetic ketamine infusion (0.5 mg/kg over 40 min) on resting-state fMRI and MR-Spectroscopy at 7 T 1 h and 24 h post-infusion. FC decrease between PCC and dorsomedial prefrontal cortex (dmPFC) was found at 24 h post-infusion (but not 1 h) and this FC decrease correlated with glutamatergic changes at 24 h in pgACC. Acute increase in fALFF was found in ventral PCC at 1 h which was not observed at 24 h and inversely correlated with the reduced dPCC FC towards the dmPFC at 24 h. The correlation of metabolic and functional markers of delayed ketamine effects and their temporal specificity suggest a potential mechanistic relationship between glutamatergic modulation and reconfiguration of brain regions belonging to the DMN.

摘要

氯胺酮在单次输注后 24 小时内迅速发挥抗抑郁作用,这被认为反映在默认模式网络 (DMN) 内的功能连接减少和前扣带皮层 (pgACC) 的谷氨酸水平在 24 小时时改变。因此,了解氯胺酮诱导的脑回路和代谢变化的相互关系和时间点特异性对于未来的治疗发展至关重要。我们研究了晚期谷氨酸变化与从后扣带皮层 (PCC) 播种的功能连接变化之间的相关性,并通过急性低频振幅分数 (fALFF) 测试了后者的预测。在一项双盲、随机、安慰剂对照的 61 名健康受试者研究中,我们比较了亚麻醉剂量氯胺酮输注 (0.5mg/kg 持续 40 分钟) 在输注后 1 小时和 24 小时对静息状态 fMRI 和磁共振波谱的影响。在输注后 24 小时(而非 1 小时)发现 PCC 与背内侧前额叶皮质 (dmPFC) 之间的功能连接减少,并且这种功能连接减少与 pgACC 中的谷氨酸变化在 24 小时时相关。在 1 小时时发现腹侧 PCC 的 fALFF 急性增加,但在 24 小时时未观察到,并且与 24 小时时 PCC 与 dmPFC 之间的减少的 dPCC 功能连接呈负相关。延迟的氯胺酮作用的代谢和功能标记物及其时间特异性的相关性表明,谷氨酸调节和属于 DMN 的脑区的重新配置之间可能存在潜在的机制关系。

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Ketamine has distinct electrophysiological and behavioral effects in depressed and healthy subjects.氯胺酮对抑郁和健康受试者具有明显的电生理和行为效应。
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氯胺酮和酒精急性给药导致的大脑活动减少——一项随机、对照、观察者盲法实验研究。
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Transient peripheral blood transcriptomic response to ketamine treatment in children with ADNP syndrome.ADNP 综合征患儿氯胺酮治疗后的短暂外周血转录组反应。
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Association of the delayed changes in glutamate levels and functional connectivity with the immediate network effects of S-ketamine.谷氨酸水平延迟变化与 S-氯胺酮即刻网络效应的关联。
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